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Dynamic Hybrid Automatic Voltage Control of the power system

机译:电力系统动态混合自动电压控制

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摘要

According to the dynamic voltage security control, the concept and method of the hybrid control system are introduced, and the Dynamic Hybrid Automatic Voltage Control (D-HAVC) system is realized. The hybrid hierarchical control system model based on the hybrid theory is set up firstly. In the model's high layer, the power system's differential-algebraic-equations are linearized, and the eigen-matrix's minimum amplitude eigenvalue (MAE) is used to judge the power system's voltage security. Through this way, the discrete events are formed and used to drive the control block. In the model's middle layer, under the discrete event driving, the control values of the control buses are calculated with the sensitiv-method, and are formed as the control strategy through the interface block. The control equipment in the bottom layer re-the control strategies and perform them, and the closed automatic voltage control is achieved. Computer simulation comparisons with Secondary Voltage Control (SeVC) have proved the solution effective in realizing D-HAVC system.
机译:根据动态电压安全控制,介绍了混合动力控制系统的概念和方法,实现了动态混合动力自动电压控制(D-HAVC)系统。首先建立了基于混合理论的混合分层控制系统模型。在模型的高层,电力系统的微分代数方程式被线性化,并且本征矩阵的最小振幅特征值(MAE)用于判断电力系统的电压安全性。通过这种方式,离散事件形成并用于驱动控制块。在模型的中间层,在离散事件驱动下,控制总线的控制值采用敏感方法进行计算,并通过接口块形成为控制策略。底层的控制设备重新执行控制策略并执行,实现了封闭的自动电压控制。计算机仿真与二次电压控制(SeVC)的比较证明了该解决方案对于实现D-HAVC系统有效。

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